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April 10, 2026ACS Sustainable Chemistry & Engineering0 citationsOpen Access

Tailoring the Properties of Ethyl Cellulose Membranes Using Hydrophobic Deep Eutectic Solvents

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BABhavna AlkeEGElena GabirondoVAVítor D. Alves

Key Points

  • The aim is to enhance the properties of ethyl cellulose membranes using hydrophobic deep eutectic solvents.
  • Incorporation of alcohol-based hydrophobic deep eutectic solvents into ethyl cellulose membranes
  • Spectroscopic analyses to confirm solvent integration
  • Hansen solubility parameter predictions to assess interactions
  • Barrier studies to evaluate permeability and selectivity
  • Eco-Scale assessment for sustainability evaluation
  • Incorporation of DES improved flexibility of ethyl cellulose, lowering the glass transition temperature below 0 °C.
  • DES addition decreased water vapor, nitrogen, carbon dioxide, and oxygen permeabilities.
  • Gas selectivity remained uncompromised with the addition of DES.
  • Membrane fabrication method classified as green according to Eco-Scale assessment.

Abstract

Developing sustainable strategies for the lucrative application of biopolymers is crucial for advancing environmentally friendly materials. Ethyl cellulose, a water-insoluble and biocompatible polysaccharide with excellent mechanical and thermal stability, is a promising material for membrane technology. This study explores nonionic, alcohol-based hydrophobic natural deep eutectic solvents (DES) as green additives for ethyl cellulose membranes. Spectroscopic analyses confirmed the successful incorporation of DES, supported by Hansen solubility parameter predictions indicating dispersive and hydrogen-bonding interactions as key mechanisms. The incorporation of DES markedly enhanced the flexibility of the polymer, lowering the glass transition temperature from 98 °C to below 0 °C. Barrier studies demonstrated that the addition of DES decreased the water vapor permeability and single-gas permeabilities (N2, CO2, and O2) without compromising gas selectivity. Moreover, the Eco-Scale assessment classified the membrane fabrication method as green, confirming improvements in sustainability metrics. Overall, hydrophobic DES are versatile and environmentally benign additives that simultaneously enable the tailoring of mechanical properties and improvement of barrier performance in ethyl cellulose membranes.

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Cite This Study

Alke et al. (2026) studied this question.

synapsesocial.com/papers/69d892d16c1944d70ce04178https://doi.org/10.1021/acssuschemeng.5c13894
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